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宽测绘带的合成孔径声呐宽带Chirp Scaling成像算法 被引量:1

A wideband Chirp Scaling imaging algorithm of synthetic aperture sonar based on wide swath
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摘要 合成孔径声呐要实现高分辨率成像不可避免地需采用宽带发射信号,但目前大部分快速算法都是建立在窄带近似基础上的,采用宽带信号作为发射信号使得现有大量的成像算法不再适用。针对此问题,本文提出了一种改进的基于宽测绘带条件下的宽带非线性Chirp Scaling算法,它通过引入三次和四次预滤波使得频域二维传递函数的三阶耦合项随距离时变,并同时引入四次Chirp scaling因子控制新的距离向调频率随距离二次变化。仿真表明,改进的算法可在保证较高测绘带宽度的前提下提高合成孔径声呐的成像分辨率。 To achieve high-resolution,the synthetic aperture sonar imaging requires wideband transmit signal,but most of algorithms are based on the narrow-band approximation and cannot be used. An improved wideband nonlinear Chirp Scaling algorithm for wide swath is proposed in this paper. In this algorithm,third order coupling term of the frequency-domain two-dimensional transfer function is change with the range by the cube and biquadratic prefiltering,and the range frequency modulation slope is change with the range because of the biquadratic chirp scaling factor. Simulation results show that the proposed algorithm can improves the imaging resolution with wide swath.
出处 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2015年第1期73-77,共5页 Journal of Harbin Engineering University
基金 国家863计划基金资助项目(2007AA091101)
关键词 合成孔径声呐 宽测绘带 宽带 非线性 CHIRP Scaling成像算法 synthetic aperture sonar wide swath wideband nonlinear Chirp Scaling imaging algorithm
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参考文献9

  • 1李启虎.水声信号处理领域新进展[J].应用声学,2012,31(1):2-9. 被引量:22
  • 2SHIPPEY G, BANKS S, PIHL J. SAS image reconstruction using fast polar back projection: comparisons with fast fac- tored back projection and Fourier domain imaging [ C ]/! OCEANS 2005-EUROPE, Brest, France, 2005.
  • 3CALLOW H J, HANSEN R E. Effect of approximations in fast factorized backprojection in synthetic aperture imaging of spot regions[ C]//OCEANS 2006. Boston, MA, 2006: 1-6.
  • 4杨海亮,唐劲松,张森.基于非停走停及方位非均匀采样的多接收阵合成孔径声纳CS成像算法[J].高技术通讯,2009,19(9):939-945. 被引量:6
  • 5张森,唐劲松,陈鸣,白生祥.干涉合成孔径声纳海试样机研制与试验[J].声学技术,2012,31(2):167-173. 被引量:12
  • 6NIEVES E G, LOPEZ J M, VILLALOBOS C P. Extension of the chirp scaling algorithm to 3-D near-field wideband ra- dar imaging [ J ]. lEE Proceedings Radar, Sonar and Navi- gation, 2003, 50(3):152-157.
  • 7POTSIS A, REIGBER A, MITI'ERMAYER J, et al. Impro- ving the focusing properties of SAR processors for wide-band and wide-beam low frequency imaging [ C ]// IGARSS' 01. Sydney, Austrilia, 2001: 3047-3049.
  • 8POTSIS A, REIGBER A, MOREIRA A, et al. Comparison of chirp scaling and wavenumber domain algorithms for airborne low frequency SAR data processing[ C]//2004 EUSAR Confer- ence Proceedings. Ulm, Germany, 2004:11-19.
  • 9李建阳,常文革,王亮,李悦丽.机载UWB SAR实时信号处理算法研究[J].国防科技大学学报,2010,32(1):57-62. 被引量:7

二级参考文献34

  • 1马晓岩,吴顺华,向家彬.速度与PRF失配对MPCSAR成像的影响及补偿方法研究[J].电子学报,2005,33(12):2130-2134. 被引量:7
  • 2邹志农,岳军,唐劲松.干涉仪合成孔径声纳原理样机的研制与试验[J].高技术通讯,2006,16(4):414-419. 被引量:3
  • 3李燕平,邢孟道,保铮.结合非线性CS算法的UWB-SAR运动补偿[J].系统工程与电子技术,2007,29(4):514-519. 被引量:3
  • 4Douglas B L, Lee H. Synthetic-aperture sonar imaging with a multiple-element receiver army. In: Proceedings of the IEEE International Conference on Acoustics, Speech, and Signal Processing, Minneapolis, MN, USA, 1993. 5. 445-448.
  • 5Gough P T, Hayes M P, Wilkinson D R. An efficient image reconstruction algorithm for multiple hydrophone array synthetic aperture sonar. In: Proceedings of the 5th European Conference on Underwater Acoustics (ECUA 2000), Lyon, France, 2000. 413-418.
  • 6Yamaguchi I. A technique of multiaperture transmitting-receiving on synthetic aperture sonar. Electronics and Communications in Japan, 1999, 82(3): 66-73.
  • 7Wilkinson D R. Efficient image reconstruction techniques for a multiple-receiver synthetic aperture sonar: [ Master's dissertation]. New Zealand: University of Canterbury Christchurch, 2001.13-22.
  • 8Cough P T, Hawkins D W. Imaging algorithms for a stripmap synthetic aperture sonar: minimizing the effects of aperture errors and aperture undersamping. IEEE Journal of Oceanic Engineering, 1997, 22(1) : 27-39.
  • 9Sheriff R W. Synthetic aperture beamforming with automatic phase compensation for high frequency sonar. In: Proceedings of the 1992 IEEE Symposium on Autonomous Underwater Vehicle Technology, Washington D C, USA,1992. 236-245.
  • 10Bonifant W W. Interferometic synthetic aperture sonar processing: [Master's dissertation]. Atlanta: Georgia Institute of Technology, 1999.38-43.

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